论文标题
磁界面的研究及其在交替顺序的Fe/Nife双层中的效果
Study of magnetic interface and its effect in Fe/NiFe bilayers of alternating order
论文作者
论文摘要
我们通过交替的磁性层顺序提出了一项关于Fe/Nife Bilayer系统中磁化逆转的全面研究。由于倾斜角度沉积技术,所有样品均显示出生长诱导的单轴磁各向异性。 Fe和Nife层之间的强界面交换耦合导致双层系统中的单相磁滞回路。耦合的强度取决于界面的变化,而磁层的顺序交替。当Nife层在FE层上生长时,诸如胁迫性HC和各向异性场HK等磁参数几乎增加了一倍。磁参数中的这种增强主要取决于fe-nife界面层的厚度和磁矩的增加,如从双层中子的偏振中子对比(PNR)数据所揭示的那样。 Fe-Nife界面层厚度和磁化的差异表明,通过交替进行双层磁层的顺序,微观结构的修饰。当Nife层在FE层上生长时,界面磁矩增加了近18%。尽管各向异性场和修饰的界面交换耦合的值不同,但吉尔伯特抑制了铁电磁双层的常数恒定值仍然与单个Nife层相似。
We present a comprehensive study on the magnetization reversal in Fe/NiFe bilayer system by alternating the order of the magnetic layers. All the samples show growth-induced uniaxial magnetic anisotropy due to oblique angle deposition technique. Strong interfacial exchange coupling between the Fe and NiFe layers leads to the single-phase hysteresis loops in the bilayer system. The strength of coupling being dependent on the interface changes upon alternating the order of magnetic layers. The magnetic parameters such as coercivity HC, and anisotropy field HK become almost doubled when NiFe layer is grown over the Fe layers. This enhancement in the magnetic parameters is primarily dependent on the increase of the thickness and magnetic moment of Fe-NiFe interfacial layer as revealed from the polarized neutron reectivity (PNR) data of the bilayer samples. The difference in the thickness and magnetization of the Fe-NiFe interfacial layer indicates the modification of the microstructure by alternating the order of the magnetic layers of the bilayers. The interfacial magnetic moment increased by almost 18 % when NiFe layer is grown over the Fe layer. In spite of the different values of anisotropy fields and modified interfacial exchange coupling, the Gilbert damping constant values of the ferromagnetic bilayers remain similar to single NiFe layer.